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首页> 外文期刊>Journal of Materials Engineering and Performance >Heating Rate Effects During Non-Isothermal Annealing of AIK Steel
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Heating Rate Effects During Non-Isothermal Annealing of AIK Steel

机译:AIK钢非等温退火过程中的升温速率效应

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The effects of heating rate on microstructural size and shape parameters during annealing of cold rolled aluminum killed steel strips have been examined under non-isothermal condition. It is shown that decrease in the heating rate results in accelerated grain growth behavior compared with the prediction by quasi-isothermal based kinetics. The {111} and {112} crystallographic orientations, which enhance the normal anisotropy and deep drawability of cold rolled annealed sheets, are found to exhibit a strong correlation with the grain shape anisotropy. This grain shape anisotropy itself is strongly dependent on heating rates. Lower heating rates result in higher aspect ratios and thus better drawability of the cold rolled sheets. A Hall-Petch type relationship is observed between grain size and hardness of the annealed samples.
机译:在非等温条件下,研究了加热速率对冷轧铝镇静钢带退火过程中组织尺寸和形状参数的影响。结果表明,与基于准等温动力学的预测相比,加热速率的降低导致晶粒生长行为的加速。发现{111}和{112}的晶体学取向增强了冷轧退火板的法向各向异性和深冲性,与晶粒形状各向异性密切相关。这种晶粒形状各向异性本身强烈地取决于加热速率。较低的加热速率导致较高的长宽比,从而使冷轧板具有更好的可拉伸性。在退火样品的晶粒尺寸和硬度之间观察到霍尔-帕奇(Hall-Petch)类型关系。

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